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Method of adiabatic modes in research of smoothly irregular integrated optical waveguides: Zero approximationWe consider the application of the method of adiabatic waveguide modes for calculating

Analytical calculations in maple to implement the method of adiabatic modes for modelling smoothly irregular integrated optical waveguide structures of adiabatic waveguide modes, applied in mathematical modeling of smoothly irregular integrated

Single-mode propagation of adiabatic guided mode in a smooth transition between planar waveguidesThe paper considers a model of adiabatic waveguide modes in the zero approximation applied

Symbolic-Numerical Modeling of the Propagation of Adiabatic Waveguide Mode in a Smooth Waveguide TransitionIn this work, the model of adiabatic waveguide modes is studied by means of computer algebra

The Implementation of the Symbolic-Numerical Method for Finding the Adiabatic Waveguide Modes of Integrated Optical Waveguides in CAS Maple of electromagnetic radiation we propose using the model of adiabatic waveguide modes. This model allows reducing

Mathematical synthesis of the thickness profile of the waveguide Lüneburg lens using the adiabatic waveguide modes method. For the dispersion relation of the irregular thin-film waveguide in the model of adiabatic waveguide modes we solve

Mathematical Modeling of Mouthpiece Type Waveguide of adiabatic waveguide modes and by the method of comparative waveguides. The difference is demonstrated

Symbolic-Numeric Study of Geometric Properties of Adiabatic Waveguide Modes was obtained using the model of adiabatic waveguide modes. Highly analytical solution procedure makes

CALCULATION MODEL OF COEFFICIENTS FUNCTIONS FOR METHOD OF COMPARATIVE WAVEGUIDES FOR OPEN SMOOTHLYIRREGULAR WAVEGUIDES functions in case of smoothly-irregular waveguide and considering only guided modes.

Mathematical modeling of irregular integrated optical waveguides is applicable in the case of real and complex coefficients of the phase retardation of waveguide modes

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